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Page 1: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC
Page 2: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC

The reference version for this certificate is published in ‘Narrowband OFDM PLC specifications for G3-PLC network, October 2014’.

The reference version for this certification is:ITU-T G.9903 (02-2014)+ CCTT #24-25-30: Implementation of MAC security (anti-replay) solution F1+ CCTT #61 : ADPM-Buffer behavior clarification+ CCTT #143: AC Phase Detection v2+ CCTT #144: Hop Limit usage during route repair v3+ CCTT #145: Value of RCCoord when the node is at adpMaxHops hops from the

coordinator+ CCTT #146: Pilot tone generation+ CCTT #147: Link-cost computation for Path discovery v2+ CCTT #148: Path discovery frame routing v3+ CCTT #152: Scrambler reset+ CCTT #154: Clarification of PANCount and PANDescriptor+ CCTT #156: Clarification of ADPM-NETWORK-STATUS.indication+ CCTT #157: Interleaver Equation v2+ CCTT #158: Unicast Routing Process+ CCTT #159: Correct the windowing function description+ CCTT #160: Clarify 16QAM quantisation and optionality+ CCTT #161: Correct aMaxFrameSize and aMinFrameSize for FCC/ARIB bandplans+ CCTT #162: Interleaver co-prime number clarification v2+ CCTT #163: CRC5 and CRC8 packing order+ CCTT #164: Route Repair v2+ CCTT #165: Clarification Neigbour Table v2+ CCTT #167: HOP COUNT metric identifier v2+ CCTT #169: Clarification on PLME_GET v4+ CCTT #170: Clarification to Frame Counter Handling Mechanism v2+ CCTT #173: Clarification of LOADng mechanism used to detect bidirectional links

Certificate registration number: G3.1601.073.2.A Page 2 of 6

Annex 1: Reference Version for Certification

Page 3: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC

Certificate registration number: G3.1601.073.2.A Page 3 of 6

Name Value Description

BAND_PLAN CENELEC A Indicate the band-plan supported by the device.

FEATURE_PAN_COORDINATOR FALSEIndicate if the device is a PAN-Coordinator (true) or

a normal device (false)

FEATURE_COHERENT_MODULA

TIONTRUE Indicate if coherent modulation is supported

FEATURE_EAP_SERVER FALSE

Indicate if an EAP-PASK server is implemented by

the DUT.

Apply only if FEATURE_PAN_COORDINATOR =

true

FEATURE_D8PSK_MODULATION TRUE True / False

FEATURE_ROUTING TRUE Indicate if the routing is implemented by the IUT

FEATURE_SECURITY F1Indicate the security implemented by the device.

Possible values are: F1, F2.

FEATURE_ACTIVE_SCAN TRUEIndicate if the active scan process is done by the

IUT after power-up

Annex 2: Protocol Implementation Conformance Statement (PICS)

Feature implementation statement

Page 4: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC

PICS related to performance (1/2)

The device tested is a G3-PLC CENELEC A 1-phase meter.

Operating voltage applied for certification testing was 230V/50Hz.

Name Value Unit Description

Certificate registration number: G3.1601.073.2.A Page 4 of 6

Annex 2: Protocol Implementation Conformance Statement (PICS)

Page 5: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC

PICS related to performance (1/2)

The device tested is a G3-PLC CENELEC A 1-phase meter.

Operating voltage applied for certification testing was 230V/50Hz.

Name Value Unit Description

PHY_001_SIGNAL_LEVEL 90 dBµVIndicate the signal level that can be injected in the band, on a

2 Ohms LISN

PHY_002_SIGNAL_LEVEL 96 dBµVIndicate the signal level that can be injected in the band, on a

CISPR16-1 LISN

PHY_003_SNR_ROBO_D -0,25 dBSNR level of white noise that can be supported with a FER <

5% for ROBO modulation in differential mode.

PHY_003_SNR_DBPSK 3 dBSNR level of white noise that can be supported with a FER <

5% for DBPSK modulation in differential mode.

PHY_003_SNR_DQPSK 5,75 dBSNR level of white noise that can be supported with a FER <

5% for DQPSK modulation in differential mode.

PHY_003_SNR_D8PSK 9,5 dBSNR level of white noise that can be supported with a FER <

5% for D8PSK modulation in differential mode.

PHY_003_SNR_ROBO_C -0,75 dB

SNR level of white noise that can be supported with a FER <

5% for ROBO modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_003_SNR_BPSK 1,25 dB

SNR level of white noise that can be supported with a FER <

5% for BPSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_003_SNR_QPSK 3,5 dB

SNR level of white noise that can be supported with a FER <

5% for QPSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_003_SNR_8PSK 6,5 dB

SNR level of white noise that can be supported with a FER <

5% for 8PSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_005_NOISE_DURATION_ROB

O_D2250 µs

Duration of the impulsive noise that can be supported with a

FER < 5% for ROBO modulation in differential mode.

Certificate registration number: G3.1601.073.2.A Page 4 of 6

Annex 2: Protocol Implementation Conformance Statement (PICS)

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Name Value Unit Description

PHY_005_NOISE_DURATION_DBP

SKµs

Duration of the impulsive noise that can be supported with a

FER < 5% for DBPSK modulation in differential mode.

PHY_005_NOISE_DURATION_DQ

PSKµs

Duration of the impulsive noise that can be supported with a

FER < 5% for DQPSK modulation in differential mode.

PHY_005_NOISE_DURATION_D8P

SKµs

Duration of the impulsive noise that can be supported with a

FER < 5% for D8PSK modulation in differential mode.

PHY_005_NOISE_DURATION_RO

BO_Cµs

Duration of the impulsive noise that can be supported with a

FER < 5% for ROBO modulation in coherent mode. Apply only

if FEATURE_COHERENT_MODULATION is true.

PHY_005_NOISE_DURATION_BPS

Kµs

Duration of the impulsive noise that can be supported with a

FER < 5% for BPSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_005_NOISE_DURATION_QP

SKµs

Duration of the impulsive noise that can be supported with a

FER < 5% for QPSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_005_NOISE_DURATION_8PS

Kµs

Duration of the impulsive noise that can be supported with a

FER < 5% for 8PSK modulation in coherent mode. Apply only if

FEATURE_COHERENT_MODULATION is true.

PHY_006_SNR dBIndicate the SNR level that can be supported by the DUT so

preambles are correctly detected (with less than 10% of loss)

PHY_007_SNR dB

Indicate the SNR level that can be supported by the DUT so

PHY header (FCH) are correctly decoded (with less than 10%

of loss)

PHY_008_SIGNAL_LEVEL dBµVIndicate the signal level of a frame that can be received

correctly by the DUT (with FER<10%)

BOOTSTRAP_001_DURATION ms

Duration needed for the DUT to reply to bootstrap messages

EAP-PSK #1 and #3. Apply only if FEATURE_DEVICE_TYPE =

PAN-Device

BOOTSTRAP_002_DURATION ms

Duration needed for the DUT to reply to bootstrap messages

joining, EAP-PSK #2 and #4. Apply only if

FEATURE_EAP_SERVER is true

BOOTSTRAP_003_DURATION msDuration needed for the DUT to relay bootstrap messages.

Apply only if FEATURE_DEVICE_TYPE = PAN-Device

TONE_MAP_001_FER %The Frame Error Rate that can be expected when applying the

tone-map configuration provided by the DUT

TONE_MAP_002_DATARATE_1 bits/sThe data-rate that can be expected when applying the tone-

map configuration provided by the DUT in situation #1

TONE_MAP_002_DATARATE_2 bits/sThe data-rate that can be expected when applying the tone-

map configuration provided by the DUT in situation #2

TONE_MAP_002_DATARATE_3 bits/sThe data-rate that can be expected when applying the tone-

map configuration provided by the DUT in situation #3

TONE_MAP_002_DATARATE_4 bits/sThe data-rate that can be expected when applying the tone-

map configuration provided by the DUT in situation #4

MESH_ROUTING_001_DURATION msDuration needed for the DUT to relay short mesh routed data

frames

MESH_ROUTING_002_DURATION msDuration needed for the DUT to relay maximum size mesh

routed data frames

Certificate registration number: G3.1601.073.2.A Page 5 of 6

Annex 2: Protocol Implementation Conformance Statement (PICS)

PICS related to performance (2/2)

Page 7: Certificate registration number: G3.1601.073.2.A Page 2 of 6 · 2016-10-10 · Certificate registration number: G3.1601.073.2.A Page 3 of 6 Name Value Description BAND_PLAN CENELEC

Annex 3:

Copy of test report cover sheet

Certificate registration number: G3.1601.073.2.A Page 6 of 6